Bacterial Sulfate Reduction: Current Status and Possible Origin
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-76884-2_28
Reference94 articles.
1. Achenbach-Richter L, Stetter KO, Woese CR (1987) A possible biochemical missing link among archaebacteria. Nature (London) 327:348–349
2. Baas Becking LGM (1925) Studies on the sulfur bacteria. Ann Bot (London) 39:613–650
3. Badziong W, Thauer RK (1978) Growth yields and growth rates of Desulfovibrio vulgaris (Marburg) growing on hydrogen plus sulfate and hydrogen plus thiosulfate as sole energy source. Arch Microbiol 117:209–214
4. Bak F, Cypionka H (1987) A novel type of energy metabolism involving fermentation of inorganic sulphur compounds. Nature (London) 326:891–892
5. Bak F, Pfennig N (1987) Chemolithotrophic growth of De sulfovibrìo sulfodismutans sp. nov. by disproportionation of inorganic sulfur compounds. Arch Microbiol 147:184–189
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